JPS6065938A - Gear engagement mechanism - Google Patents

Gear engagement mechanism

Info

Publication number
JPS6065938A
JPS6065938A JP17385783A JP17385783A JPS6065938A JP S6065938 A JPS6065938 A JP S6065938A JP 17385783 A JP17385783 A JP 17385783A JP 17385783 A JP17385783 A JP 17385783A JP S6065938 A JPS6065938 A JP S6065938A
Authority
JP
Japan
Prior art keywords
gear
gears
spring
pin
meshing
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP17385783A
Other languages
Japanese (ja)
Inventor
Tomoo Mikota
三小田 知生
Hiroyuki Idenawa
弘行 出縄
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ricoh Co Ltd
Original Assignee
Ricoh Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ricoh Co Ltd filed Critical Ricoh Co Ltd
Priority to JP17385783A priority Critical patent/JPS6065938A/en
Publication of JPS6065938A publication Critical patent/JPS6065938A/en
Pending legal-status Critical Current

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  • Gear Transmission (AREA)

Abstract

PURPOSE:To enable gears to smoothly engage with each other even when a space is restricted and an one-way clutch is not available by providing a spring for absorbing reaction produced at gear engagement between coupling means of one of the gears and a gear shaft. CONSTITUTION:A pin 7 is driven into a driving shaft 6 and one end 8a of a coil- shaped torsional spring 8 is inserted into one side of said pin 7. A boss part 9 of the gear 1 is inserted between a driving shaft 6 and the spring 8. With rotation of the gear 1, the pin 7 is positioned at a slitting part 10 of the boss part 9, an end part 8b of the torsional spring 8 is inserted into a hole 11 of the gear 1, and an E-shaped retaining ring 12 is mounted, allowing an engagement mechanism of the gear 1 to be assembled. Hereby, reaction produced at engagement of the gear 1 can be absorbed by the torsional spring 8. In addition, even when there is any space limitation and no one-way clutch, etc., is available, the gear 1 can be smoothly engaged.

Description

【発明の詳細な説明】 技」した厨一 本発明は、ユニット間の動力伝達部の歯車の噛み合わせ
機構に関するものである。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a gear meshing mechanism of a power transmission section between units.

従来技術 ユニット間の動力伝達部の歯車の噛み合わせ機構として
は、歯車軸方向にユニットを移動させる場合と、歯車軸
に直角な方向にユニットを移動させる場合とがあるが、
本発明は後者の場合に関するものである。
Conventional technology There are two types of meshing mechanisms for gears in a power transmission section between units: one in which the unit is moved in the direction of the gear axis, and the other in a direction perpendicular to the gear axis.
The present invention relates to the latter case.

従来例として、第1図に示すように、駆動側ユニットに
歯車1,2が設けられていて、被駆動側歯車3はセット
時に中間歯車2にぶつかるが、歯先同士が当っても、歯
車が回転しはじめる時に正規の歯車位置間距離となって
駆動が行われる。しかし、この場合、■歯車噛み合わせ
のために歯車(中間歯車2)を1個余分に用意しなくて
はならないこと、■歯車1,2の保持部材4が必要なこ
と、のために、結果的にスペースをそれだけ必要とする
。なお、符号5は噛合の際の衝撃吸収のためのバネであ
る。
As a conventional example, as shown in Fig. 1, gears 1 and 2 are provided on the drive side unit, and the driven side gear 3 collides with the intermediate gear 2 when set, but even if the tips of the teeth hit each other, the gears When the gears begin to rotate, the distance between the gear positions becomes normal and driving is performed. However, in this case, ■ one extra gear (intermediate gear 2) must be prepared for gear meshing, and ■ retaining members 4 for gears 1 and 2 are required. It requires that much space. Note that reference numeral 5 is a spring for absorbing shock during engagement.

また、第2図に示すように、駆動歯車1、被駆動歯車3
のセンター位置がユニットの移動(矢印)方向と一直線
になっていない場合、ワンウェイクラッチを使用してユ
ニットセット時の歯車歯先のあたりをスムーズに逃げる
ことができるが、これはA方向に駆動歯車1が回転する
場合に限られる。
In addition, as shown in FIG. 2, a driving gear 1, a driven gear 3
If the center position of the unit is not in line with the direction of movement (arrow) of the unit, you can use a one-way clutch to smoothly escape around the gear tooth tip when the unit is set, but this will cause the drive gear to move in the A direction. 1 rotates.

即ち、軸6より伝達トルクが矢印8回りに駆動歯車1に
伝えられる場合、このユニットを矢印方向に離し、再び
もとの状態におこうとする時に、駆動歯車1をA方向に
回わそうとする力が作用する。
That is, when the transmission torque is transmitted from the shaft 6 to the driving gear 1 in the direction of the arrow 8, when this unit is released in the direction of the arrow and the original state is to be returned again, the driving gear 1 is rotated in the direction A. A force acts.

この駆動歯車1と駆動軸6とがワンウエイクラッチで連
結されているとすると、駆動軸6も一緒に回わろうとす
るので、駆動系全体に負荷を与えることになり、好まし
くない。
If the drive gear 1 and the drive shaft 6 are connected by a one-way clutch, the drive shaft 6 will also try to rotate, which is undesirable because it will put a load on the entire drive system.

1■ ユニット間の力の伝達または回転の伝達に歯車を用いる
機構において、ユニット連結時の歯車の噛み合わせ方法
はよく問題になり、従来様々方法が行われてきているが
、本発明は、歯車の噛み合わせ方法に空間的スペースの
制約があり、さらに、ワンウェイクラッチなどが使用で
きない状態においても、歯車の噛み合いをスムーズに行
うことができるようにすることを目的とするものである
1. In mechanisms that use gears to transmit force or rotation between units, the method of meshing the gears when connecting the units is often a problem, and various methods have been used in the past, but the present invention The purpose of this invention is to enable gears to mesh smoothly even in situations where there are spatial constraints on the meshing method and a one-way clutch or the like cannot be used.

1戒 本発明を図面に示す実施例に従って説明する。゛第3図
は本発明を駆動側に実施した例を示す分解斜視図、第4
図は第3図の組立斜視図で、駆動軸6に対しピン7を打
ち込み、コイル状トーションバネ8の一端8aをピン7
の片側に入れ込み、歯車1のボス部9をトーションバネ
8と軸6の間に入れ、歯車lを回転させてボス部9のす
り割り部10にピン7を配置させ、トーションバネ8の
端部8bを歯車1の穴11に入れ、E型止め輸12を取
付ける。ここでのトーションバネ8は右巻きで、セット
時はさらに右に回転させながらコイル径を広げる形でセ
ットする。第4図は第3図の組み合せによる完成図であ
る。
First Precept The present invention will be explained according to embodiments shown in the drawings.゛ Fig. 3 is an exploded perspective view showing an example in which the present invention is implemented on the drive side;
The figure is an assembled perspective view of FIG.
, insert the boss 9 of the gear 1 between the torsion spring 8 and the shaft 6, rotate the gear 1, place the pin 7 in the slot 10 of the boss 9, and insert the boss 9 of the gear 1 between the torsion spring 8 and the shaft 6. 8b into the hole 11 of the gear 1, and attach the E-type stopper 12. The torsion spring 8 here is a right-handed winder, and when setting it, rotate it further to the right to widen the coil diameter. FIG. 4 is a completed view of the combination of FIG. 3.

トーションバネ8の選定は、第2図かられかるように、
着脱ユニットをセットする時、負荷にならないように捩
れを小さくした方がよい。しかし、負荷トルク2kgc
mにおいて、コイル線径φ0.6、コイル径φ14の場
合、歯車のスタートストップ繰り返し回数数万回でカタ
カタ音の発生を確認しており、作用点において数100
g以上の力を必要とする。
The selection of the torsion spring 8 is as shown in Fig. 2.
When setting the removable unit, it is better to minimize twisting so as not to cause stress. However, the load torque is 2kgc
When the coil wire diameter is φ0.6 and the coil diameter is φ14, rattling noise has been confirmed to occur after the gear start/stop is repeated tens of thousands of times, and rattling noise is heard at the point of action.
Requires force greater than g.

第5図(a)は駆動歯車1と被駆動歯車3とが噛み合っ
た状態、(b)は離れた状態を示す断面図で、ユニット
が離れた状態ではピン7とすり割り部10との関係は(
b)図の状態をとり、ユニットがセットされて動作状態
にある時には、(a)図の状態となる。歯車10回転余
裕は、現実歯車の噛み合い一3= をスムーズにするには、歯車−歯分の回転余裕があれば
よい。
FIG. 5(a) is a sectional view showing the driving gear 1 and the driven gear 3 in a state in which they are meshed, and FIG. 5(b) is a sectional view showing the state in which they are separated, and the relationship between the pin 7 and the slotted portion 10 when the units are separated. teeth(
b) The state shown in the figure is taken, and when the unit is set and in operation, it becomes the state shown in the figure (a). To make the meshing of actual gears smooth, it is sufficient to have a rotational margin of 10 gears.

トーションバネ8の使い方として、この実施例では開く
方向で第4図に示すように完成させたが、ボス径とトー
ションバネの内径を考慮して、トーションバネの径を縮
める方向で設計することも可能である。また、この実施
例では、トーションバネ8を歯車ボス9外周に設けてい
るが、ボス内部に収納するとか、歯車側面に取置けるよ
うにしてもよい。
As for how to use the torsion spring 8, in this example, it was completed in the opening direction as shown in Fig. 4, but it is also possible to design the torsion spring in a direction in which the diameter of the torsion spring is reduced, taking into consideration the boss diameter and the inner diameter of the torsion spring. It is possible. Further, in this embodiment, the torsion spring 8 is provided on the outer periphery of the gear boss 9, but it may be housed inside the boss or placed on the side surface of the gear.

第6図は、緩衝部材として圧縮バネ13を用いた実施例
を示すもので、(、)図が第5図(a)に相当し、(b
)図が第4図(b)に相当する。なお、圧縮バネの代り
に引っ張りバネを用いて構成することも可能である。
FIG. 6 shows an embodiment in which a compression spring 13 is used as a buffer member, and the (,) figure corresponds to FIG.
) corresponds to FIG. 4(b). Note that it is also possible to use a tension spring instead of a compression spring.

以上、駆動歯車軸と駆動歯車との間に緩衝部材を設けた
実施例について説明したが、同様の考え方で、被駆動歯
車と被駆動軸との間に設けてもよい。
Although the embodiment in which the buffer member is provided between the drive gear shaft and the drive gear has been described above, the buffer member may be provided between the driven gear and the driven shaft based on the same concept.

倭米 4一 本発明によれば、空間的スペースの制約があり、しかも
ワンウェイクラッチなどの使用できない状態においても
、ユニット間の力の伝達または回転の伝達をスムーズに
行うよう、歯車を噛み合わせることができる。
According to the present invention, gears can be meshed to smoothly transmit power or rotation between units even when there is a spatial restriction and a one-way clutch cannot be used. I can do it.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は、中間歯車を用いた従来例の歯車の噛み合わせ
機構を示す側面図、第2図は、中間歯車を用いない場合
における噛み合い過程をす説明図、第3図は本発明によ
る実施例の分解斜視図、第4図は第3図の組立斜視図、
第5図は歯車噛み合い状態と離間状態における駆動軸と
駆動歯車の位置関係を示す断面図で、(a)は噛合状態
、(b)は離間状態を示し、また、第6図(a)、(b
)は第5図と同様の別実施例を示す図、で、ある。 1・・・駆動歯車、 2・・・中間歯車、 3・・・被
駆動歯車、 6・・・駆動軸、 7・・・ピン、 8・
・・トーションバネ、9・・・ボス、 10・・・すり
割り部、 11・・・穴、 13・・・圧縮バネ。 代理人 弁理士 今 誠 第1図 第2図 第3図 館 AF 第5図 (0) (bン 第6図 (○)(b)
Fig. 1 is a side view showing a conventional gear meshing mechanism using an intermediate gear, Fig. 2 is an explanatory diagram showing the meshing process when the intermediate gear is not used, and Fig. 3 is an embodiment according to the present invention. An exploded perspective view of the example, Figure 4 is an assembled perspective view of Figure 3,
FIG. 5 is a sectional view showing the positional relationship between the drive shaft and the drive gear in the gear meshing state and the separated state, where (a) shows the meshing state, (b) shows the separated state, and FIG. 6(a), (b
) is a diagram showing another embodiment similar to FIG. 5. DESCRIPTION OF SYMBOLS 1... Drive gear, 2... Intermediate gear, 3... Driven gear, 6... Drive shaft, 7... Pin, 8...
...Torsion spring, 9...Boss, 10...Slit portion, 11...Hole, 13...Compression spring. Agent Patent Attorney Makoto Kon Figure 1 Figure 2 Figure 3 AF Figure 5 (0) (b Figure 6 (○) (b)

Claims (1)

【特許請求の範囲】[Claims] (1)ユニット動力伝達を歯車の噛み合わせにより行う
装置において、一方の歯車と歯車軸の結合手段間に、噛
み合わせ時に生じる反力を吸収するためのバネを設けて
なる歯車の噛み合わせ機構。
(1) In a device that transmits unit power by meshing gears, a gear meshing mechanism is provided with a spring for absorbing reaction force generated during meshing between one gear and a gear shaft coupling means.
JP17385783A 1983-09-20 1983-09-20 Gear engagement mechanism Pending JPS6065938A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP17385783A JPS6065938A (en) 1983-09-20 1983-09-20 Gear engagement mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP17385783A JPS6065938A (en) 1983-09-20 1983-09-20 Gear engagement mechanism

Publications (1)

Publication Number Publication Date
JPS6065938A true JPS6065938A (en) 1985-04-15

Family

ID=15968426

Family Applications (1)

Application Number Title Priority Date Filing Date
JP17385783A Pending JPS6065938A (en) 1983-09-20 1983-09-20 Gear engagement mechanism

Country Status (1)

Country Link
JP (1) JPS6065938A (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0933877A (en) * 1995-07-14 1997-02-07 Tokyo Electron Ltd Inspection device
KR20040051299A (en) * 2002-12-12 2004-06-18 주식회사 크린전기 Ratchet gear assembly for small generator
US6809440B2 (en) * 2003-03-10 2004-10-26 Buehler Motor, Inc. Space-saving, damping coupling mechanism for worms in geared actuators
KR20070119340A (en) * 2006-06-15 2007-12-20 노틸러스효성 주식회사 Connecting structure of gear and shaft
JP2008233748A (en) * 2007-03-23 2008-10-02 Ricoh Co Ltd Drive device, image forming apparatus, process cartridge and fixing device
JP2015148733A (en) * 2014-02-07 2015-08-20 株式会社沖データ Gear engaging mechanism and image forming apparatus

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0933877A (en) * 1995-07-14 1997-02-07 Tokyo Electron Ltd Inspection device
KR20040051299A (en) * 2002-12-12 2004-06-18 주식회사 크린전기 Ratchet gear assembly for small generator
US6809440B2 (en) * 2003-03-10 2004-10-26 Buehler Motor, Inc. Space-saving, damping coupling mechanism for worms in geared actuators
KR20070119340A (en) * 2006-06-15 2007-12-20 노틸러스효성 주식회사 Connecting structure of gear and shaft
JP2008233748A (en) * 2007-03-23 2008-10-02 Ricoh Co Ltd Drive device, image forming apparatus, process cartridge and fixing device
JP2015148733A (en) * 2014-02-07 2015-08-20 株式会社沖データ Gear engaging mechanism and image forming apparatus

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